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[Contrast and quantitative characteristics of biological tissues in experimental neoplastic processes based on biexponential relaxation analysis of NMR tomograms].

A method of contrast enhancement and quantification of experimental tumors in vivo by estimation of tissue proton transverse magnetic relaxation nonexponentiality is proposed. Relaxation time and percentage of a rapidly descending magnetization component due to intracellular water protons are followed for tumor and uninvolved tissues in a course of subcutaneously transplanted solid mouse melanoma B16 development. The exponential approximation of a relaxation curve within the 6-90 ms time range is shown to fit melanoma B16 tissue characterization. Contrast-enhanced calculated MR-images are presented.

Animals

Method for determination of free intracellular and extracellular methylglyoxal in animal cells grown in culture.

Methylglyoxal is present at low levels in most cells as a by-product of glycolysis and a product of lipid and amino acid catabolism. The most widely accepted method for measurement of methylglyoxal involves the derivatization of methylglyoxal with 1,2-diaminobenzene derivatives, such as o-phenylenediamine, followed by quantification of the resulting quinoxaline with high-performance liquid chromatography (HPLC). Here we describe the modification of this procedure for the measurement of free intra- and extracellular methylglyoxal in animal cells grown in culture. Cell harvest and sample volume measurement techniques were developed. Solid-phase extraction prior to methylglyoxal derivatization reduced interferences unique to cell culture, such as the phenol red indicator dye used in most cell culture media, and extended the useful life of the HPLC column. In addition, this extraction step significantly lessened the interference represented by oxidative degradation of nucleic acids to methylglyoxal by perchloric acid under assay conditions. The concentration of free intracellular methylglyoxal in Chinese hamster ovary (CHO) cells grown in culture ranged from 0.7 +/- 0.3 microM (mean +/- 2 standard deviations; n = 4) to 1.2 +/- 0.3 microM (mean +/- 2 standard deviations; n = 7). The concentration of free extracellular methylglyoxal in the growth medium was 0.07 +/- 0.02 microM (mean +/- 2 standard deviations; n = 4), severalfold less than that found inside the cell. A possible explanation for the difference between measured free intracellular and extracellular methylglyoxal levels is that the assay for free intracellular methylglyoxal also measures some reversibly bound methylglyoxal.

Animals

Oxygen limitation induces indirectly the synthesis of cytochrome P-450 mRNA in alkane-growing Candida maltosa.

Candida maltosa cells grown on hexadecane under oxygen limitation have an up to 6-fold higher cytochrome P-450 content in comparison to cells cultivated at oxygen saturation. We show by mRNA quantification using an in vitro translation system and subsequent specific immunoprecipitation that the cytochrome P-450 induction occurs mainly on the transcriptional level. The signal for induction may be the enhanced intracellular hexadecane concentration owing to a reduced hydroxylation capacity of the cytochrome P-450 at oxygen limitation.

Aerobiosis

ESTA: a bioassay system for the determination of the potencies of hormones and antibodies which mimic their action.

A bioassay system named ESTA (eluted stain assay) has been developed to measure hormones and antibodies which mimic their action. It is derived from approaches used for cytochemical bioassays. Unlike the latter which use tissue segments or sections, ESTA is based upon uniform microcultures of target cells maintained in microtitre plates. Direct elution of the cytochemical stain from these microcultures into the wells of the microtitre plates permits rapid quantification with a microtitre plate reader. We describe ESTA systems for GH, prolactin, thyroid stimulators and human chorionic gonadotrophin which utilize the reduction of a tetrazolium salt to a formazan by intracellular dehydrogenase as the cytochemical system. These provide examples of ESTA systems in which the assay signal depends solely upon an increase in cell number in response to the hormone, or in which there is additional enzymic amplification.

Animals

Quantification of effector/target conjugation involving natural killer (NK) or lymphokine activated killer (LAK) cells by two-color flow cytometry.

Precise estimates of the frequency of NK- and LAK-target conjugates were obtained by two-color flow cytometry using hydroethidine and calcein as intracellular labels for target cells and effector cells, respectively. These two dyes can easily be used with a standard single-laser flow cytometer with excellent signal separation and dye retention. Hydroethidine labeling did not alter target susceptibility, and calcein labeling did not significantly alter NK function. Excellent agreement was obtained between this flow cytometric method and visual estimation of the frequency of fresh or IL-2-activated human lymphocytes that form conjugates with K-562 target cells. The percentage of cloned NK or LAK cells that form conjugates with K-562 target cells was dependent on the E:T ratio, with extrapolated maximum conjugate frequencies (alpha max) of 40-50%. However, the frequency of lymphocytes forming conjugates with K-562 cells did not closely correlate with the cytolytic activity of a given lymphocyte population. This two color flow cytometric method employing a pair of fluorochromes that do not modify cell membranes or alter cell function in cytotoxicity assays should facilitate further studies of mechanisms involved in the initial stages of target cell recognition by NK and LAK cells.

Cell Survival

Quantification of Ca(2+)-ATPase in erythrocytes from subjects with essential hypertension or Raynaud's phenomenon.

The increased peripheral vascular resistance in subjects with essential hypertension and in subjects with primary Raynaud's phenomenon is thought to be the consequence of an impaired control of intracellular Ca2+ in vascular smooth muscle cells. Abnormal membrane handling of Ca2+ in human essential hypertension is not limited to vascular smooth muscle cells but has been demonstrated in a number of blood cells, for example, erythrocytes. Ca(2+)-ATPase activity and Ca(2+)-ATPase densities were measured in erythrocyte membranes from healthy volunteers and subjects with essential hypertension or with Raynaud's phenomenon. We found no significant differences between the three groups in the Ca(2+)-ATPase activity and in the number of Ca(2+)-ATPase immunoreactive sites per erythrocyte. Furthermore, we could not demonstrate any influence of sex or age on these two parameters. We conclude that, in essential hypertension and in Raynaud's phenomenon, the Ca2+ extrusion capacity of the erythrocytes is not altered.

Adult

Indium-111-labeled polyclonal human immunoglobulin: identifying focal infection in patients positive for human immunodeficiency virus.

Pooled human immunoglobulin labeled with indium-111 (111In-HIgG) was used to identify the presence and extent of infection in patients positive for human immunodeficiency virus (HIV), presenting with either symptoms and/or signs of acute chest infection or with pyrexia without localizing signs or symptoms. Fifty-five studies were performed in 51 patients with suspected chest infection or pyrexia without localizing signs. Of these, 111In-HIgG identified intrapulmonary accumulation in 17 patients with Pneumocystis carinii pneumonia, eight with bacterial pneumonia, five with cytomegalovirus pneumonia, three with pulmonary Mycobacterium avium intracellulare infection and one with a fungal pneumonia. There was no intrapulmonary accumulation of 111In-HIgG in five patients with bronchopulmonary Kaposi's sarcoma and in three patients with intrathoracic lymphoma. Quantification of lung/heart activity was significantly increased (p < 0.05) in patients with active chest infection compared with those with intrapulmonary tumor or no active lung pathology. Indium-111-HIgG scintigraphy also localized at 14 sites of extrapulmonary infection, including six patients with colitis. There were no false-negative studies but false-positive uptake was seen in four studies. These results confirm that 111In-HIgG correctly identifies the presence and extent of infection in patients positive for HIV antibody.

AIDS-Related Opportunistic Infections

Secretory granules of heparin-containing rat serosal mast cells also possess highly sulfated chondroitin sulfate proteoglycans.

Rat serosal mast cells, which synthesize only heparin proteoglycans as detected by intrinsic labeling with [35S]sulfate, were analyzed for the presence of intracellular chondroitin sulfate proteoglycans by chemical and immunochemical means. Rat serosal mast cells of greater than 99% purity were treated with Zwittergent 3-12 and 4 M guanidine HCl, and the extracted nonradiolabeled proteoglycans were purified by density gradient centrifugation. As assessed by quantification of the unsaturated disaccharides released from the proteoglycans by chondroitinase ABC treatment, 10(6) rat serosal mast cells contained 2.4-4.5 micrograms of chondroitin sulfate proteoglycans. Analysis of the chondroitinase ABC digests by high performance liquid chromatography revealed the unsaturated disaccharides delta Di-4S, delta Di-diSB, and delta Di-diSE which were derived from GlcA----GalNAc-4-SO4, iduronic acid-2-SO4----GalNAc-4-SO4, and GlcA----GalNAc-4,6-diSO4, respectively. The molar ratio of the monosulfated to disulfated disaccharides was approximately 2:1 with delta Di-diSE greater than delta Di-diSB. When analyzed with a mouse anti-chondroitin sulfate monoclonal antibody and fluorescein-labeled F(ab')2 goat anti-mouse IgG, approximately 91% of permeabilized and chondroitinase ABC-treated cells in the mast cell preparations exhibited intracellular fluorescence, and the pattern of staining indicated that the chondroitin sulfate molecules were located in the secretory granules. The specificity of the monoclonal antibody for the unsaturated double bond created by chondroitinase ABC treatment of the proteoglycan in situ was established by the absence of fluorescence when the chondroitinase ABC step was omitted or when heparinase digestion was substituted for chondroitinase ABC. Furthermore, the ability of the anti-chondroitin sulfate monoclonal antibody to mediate fluorescence in situ was markedly reduced by absorption with solid-phase chondroitin sulfate proteoglycan that had been chondroitinase ABC-treated, but not by absorption with undigested proteoglycan or with solid-phase heparin. The highly sulfated chondroitin sulfate proteoglycans of rat serosal mast cells are the same type synthesized by the rat mucosal mast cell subclass.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Regulation of cardiac muscle contractility.

The heart's physiological performance, unlike that of skeletal muscle, is regulated primarily by variations in the contractile force developed by the individual myocardial fibers. In an attempt to identify the basis for the characteristic properties of myocardial contraction, the individual cardiac contractile proteins and their behavior in contractile models in vitro have been examined. The low shortening velocity of heart muscle appears to reflect the weak ATPase activity of cardiac myosin, but this enzymatic activity probably does not determine active state intensity. Quantification of the effects of Ca(++) upon cardiac actomyosin supports the view that myocardial contractility can be modified by changes in the amount of calcium released during excitation-contraction coupling. Exchange of intracellular K(+) with Na(+) derived from the extracellular space also could enhance myocardial contractility directly, as highly purified cardiac actomyosin is stimulated when K(+) is replaced by an equimolar amount of Na(+). On the other hand, cardiac glycosides and catecholamines, agents which greatly increase the contractility of the intact heart, were found to be without significant actions upon highly purified reconstituted cardiac actomyosin.

Adenosine Triphosphatases

Estrogen receptor immunocytochemical assay (ER-ICA) in human endometrium.

An estrogen receptor immunocytochemical assay (ER-ICA) was applied to 15 tissue samples from human endometrium: five proliferative, five secretory, three carcinomas, and two atypical hyperplasias. A monoclonal anti-ER (H 222 SP gamma, Abbott Lab.) and peroxidase antiperoxidase method were applied on frozen sections, 5 micron thick for light microscopy (LM), 100 micron thick for electron microscopy (preembedding). Positive ER staining was quantitated on tissue sections (LM) using a computerized system of image analysis referred to as SAMBA 200 (Thomson TITN). Positive immunostaining was observed in the nuclei of both epithelial and stromal cells in normal and disordered endometrium. SAMBA 200 quantitative analysis permitted an accurate quantification of ER-positive staining. From this preliminary study it is concluded that (a) ER-ICA constitutes a reliable method to study the ER heterogeneous distribution in tissues and the precise intracellular ER localization, which is not feasible by ER biochemical binding assays; (b) SAMBA 200 analysis of the immunostained tissue sections permits an accurate and reproducible method of evaluating the results to quantitate the staining intensity and to determine the percentage of positive cells and the distribution of positive staining of the various tissue structures (glands and stroma).

Adenocarcinoma

Epidermal growth factor induction of cellular proliferation and protooncogene expression in growth-arrested rat H4IIE hepatoma cells: role of cyclic adenosine monophosphate.

The precise molecular events involved in growth factor-mediated cell proliferation in eukaryotes have not been entirely elucidated. Identification and characterization of the itnracellular molecular signaling systems linking growth factor function with nuclear events would provide insight into the regulatory mechanisms governing eukaryotic cell growth. In this report, we demonstrate that serum-deprived rat H4IIE hepatoma cells enter a quiescent state and remain viable in the absence of serum for up to 7 days. These cells can be stimulated to transverse the cell cycle and proliferate in response to epidermal growth factor (EGF) after a 24-h lag phase. We were able to completely mimic the mitogenic effects of EGF with 8-p-chlorophenylthio-cAMP (8-CPT-cAMP) but only partially with N6-(Bu)2-cAMP. EGF and 8-CPT-cAMP together induce a synergistic increase in H4IIE hepatoma cell proliferation. The calcium ionophore A23187 and the phorbol ester, 4 beta-phorbol 12-myristate 13-acetate had little effect on H4IIE cell proliferation. EGF treatment led to a rapid and transient increase of intracellular cAMP concentration. Both 8-CPT-cAMP and EGF were also equally effective in causing a rapid and transient induction of c-fos and c-myc protooncogene mRNA levels when added to growth-arrested H4IIE cells while A23187, N-(Bu)2-cAMP, and 4 beta-phorbol 12-myristate 13-acetate were significantly less effective. Both EGF and 8-CPT-cAMP affect protooncogene expression in growth-arrested rat H4IIE hepatoma cells primarily at the transcriptional level. Localization and semi-quantification of nuclear pp55c-fos and 63 (kilodalton)-myc protooncoproteins by immunocolloidal gold electron microscopy revealed that EGF and/or 8-CPT-cAMP treatment of quiescent H4IIE hepatoma cells led to a marked and rapid nuclear accumulation of these proteins in discrete nuclear substructures. Cummulatively, these results suggest that cAMP participates in the intracellular signaling system mediating the mitogenic and protooncogene inducing effects of EGF on growth-arrested rat H4IIE hepatoma cells.

Animals

Calmodulin quantification and immunolocalization in developing embryonic orofacial tissue.

Temporally and quantitatively coordinated synthesis of cyclic adenosine monophosphate appears to be critical for normal development of the mammalian secondary palate. Calmodulin has been implicated as being involved in mediating the activity of a number of fundamental calcium-regulated intracellular enzyme systems including phosphodiesterases, adenylate cyclase, and a variety of kinases, all of which may regulate or be regulated by intracellular cAMP. Calmodulin levels were thus quantified, and endogenous calmodulin was immunolocalized in developing palatal tissue in vivo and in embryonic palatal mesenchymal cells in vitro. Endogenous palatal calmodulin levels, determined by radioimmunoassay, showed little variation during the period of murine palatal ontogenesis and averaged 0.23 ng/micrograms protein. Murine palate mesenchymal cells in monolayer, either in logarithmic growth or at confluency, contained similar levels of calmodulin. In palate mesenchymal cells in primary culture, specific anti-calmodulin staining was confined to the cell cytoplasm and was concentrated in the perinuclear region. Since immunostaining for calmodulin appeared to be associated with discrete cytoplasmic filaments, distribution of actin and tubulin were investigated. Immunostaining for tubulin in these cells was also localized to the perinuclear region, while immunolocalization of actin showed staining patterns, reflective of stress fibers, which were quite different from those seen for calmodulin. Immunostaining was seen in vivo in all regions of the palatal epithelium with superficial peridermal cells staining most intensely. Specific immunostaining was also evident in palatal mesenchyme, where a pericellular distribution was seen. Staining patterns were similar throughout the period of palatal ontogeny. In addition, a sharply defined localization of calmodulin to cartilagenous extracellular matrix was noted. This study provides a useful initial approach toward understanding the role calmodulin may play in embryonic orofacial development.

Animals

Intracellular phospholipase activity in rat heart: comparison between endogenous and exogenous substrates.

Two methods were used to estimate the intracellular phospholipase activity in rat heart: one using exogenous radioactive substrate dispersed as unilamellar vesicles; the other using endogenous membrane hydrolysis and subsequent phospholipid and lysophospholipid separation by high-performance liquid chromatography and quantification by phosphorus determination. We found that the endogenous method provided a higher hydrolysis rate than the exogenous method and that phosphatidyl ethanolamine was a better substrate than phosphatidyl choline.

Animals

Quantification of Ca(2+)-ATPases in porcine duodenum. Effects of 1,25(OH)2D3 deficiency.

Previous studies have identified a calmodulin-stimulated ATP-dependent Ca2+ pump as the major Ca2+ efflux pathway in enterocytes. Here, we developed methods to quantify the number of Ca2+ pumps in basolateral and intracellular membranes from porcine duodenum. By the use of a pig strain with a genetic defect in renal 1 alpha-hydroxylase, we were able to investigate the influence of 1,25(OH)2D3-deficiency on the number of Ca(2+)-ATPases in porcine duodenum. The amount of Ca(2+)-ATPase in isolated basolateral membranes was 5.5 +/- 0.7 micrograms/mg protein, while the Vmax of ATP-dependent Ca2+ transport into inside-out resealed basolateral membrane vesicles was 2.6 +/- 0.4 nmol/mg protein per min. From these data we estimated roughly about 95 x 10(3) plasma membrane Ca2+ pump sites per enterocyte. In addition, the amount of intracellular Ca(2+)-ATPase in microsomal fractions was 0.41 +/- 0.02 microgram/mg protein. Comparison of these parameters between control and rachitic animals showed that Ca2+ pump capacities in both basolateral membranes and microsomal fractions of porcine duodenum are not influenced by 1,25(OH)2D3-deficiency. In conclusion, stimulatory effects of 1,25(OH)2D3 on intestinal Ca2+ transport most likely result from specific effects on apical influx and facilitation of cytosolic Ca2+ diffusion by Ca(2+)-binding proteins and not from an increase in Ca2+ pumping capacity in basolateral membranes.

Adenosine Triphosphate

Propidium iodide as a nuclear counterstain for immunofluorescence studies on cells in culture.

We describe a rapid procedure using propidium iodide (PI) as a nuclear counterstain in immunofluorescence studies where cell surface or intracellular antigens are localized with fluorescein-conjugated antisera. In fixed monolayer preparations, all cell nuclei fluoresce red and can be seen simultaneously with cellular antigens that fluoresce green. Counterstaining with PI therefore makes possible quantification of the proportion of cells present in culture that stain immunocytochemically for a specific antigen.

Cell Nucleus

31P nuclear magnetic resonance studies of the fermentation of glucose to ethanol by Zymomonas mobilis.

High resolution 31P nuclear magnetic resonance spectroscopy has been employed to study the fermentation of glucose to ethanol by Zymomonas mobilis, strain ZM4, a bacterium which uses the Entner-Doudoroff pathway. The levels of nucleoside triphosphates, sugar phosphates, UDP-sugars and Pi in intact fermenting cells have been studied with a time resolution of 1 min. It is suggested that a pH gradient is established across the cell membrane during fermentation and that the intracellular pH does not rise above approximately 6.4. 31P resonances from most phosphorus-containing intermediates in the Entner-Doudoroff pathway, as well as adenosine and uridine nucleotides and a number of other intracellular metabolites, have been assigned in perchloric extracts of fermenting cells by means of a number of techniques, including two-dimensional homonuclear J-resolved and two-dimensional homonuclear shift-correlated spectroscopy. Quantification of these metabolites in spectra of extracts of fermenting cells indicates that the rate-limiting steps in the Entner-Doudoroff pathway in Z. mobilis are the conversions of glucose 6-phosphate to 6-phosphogluconate and of 3-phosphoglycerate to 2-phosphoglycerate.

Ethanol

[Biochemical methods for the determination of a clinical protein catabolism].

1. 20 patients before surgery received enteral nutrition for three days (12 g nitrogen, 1800 Kcal). Nitrogen and urea excretions in urine during the second and third day were determined. Eleven patients had a negative nitrogen balance (-2,7 and -2,4 g/day). In these patients urea production rates were 21,1 and 20,1 g/day. An urea production rate exceeding 15 g urea/day is probable an indication for a protein catabolism. The reason for this catabolic state seems to be a decreased protein utilisation (49 and 47 percent) as the result of a metabolic stress situation. This metabolic stress was determined according the stress index (Bistrian). The patients were in a stress situation comparable to postoperative stress (+3,7 and +3,9). The determination of urea production rate and catabolic index seems a suitable tool for defining a catabolic state. 2. 3-met-histidine excretion in urine were measured in seven patients postoperatively. In different periods saline or aminoacids solutions (5% alanine) were infused. During alanine administration protein (+49%)--and 3-met-histidine excretions (+50%) increased. It is not possible to state a catabolic situation out of the 3-met-histidine excretion, because an increased excretion may result from a stimulated protein synthesis in muscle tissue or from an increased muscleprotein wasting. 3. Free amino acid pools in plasma and muscle tissue were analysed in patients with severe illness of liver and pancreas. The free amino acid pattern differed from healthy volunteers. In patients with liver disease significantly increased concentrations of phenylalanine, tyrosine and methionine were found. In patients with acute pancreatitis highly abnormal pattern of intracellular amino acids occurred with decreased concentrations of glutamine, cysteine, histidine, lysine, arginine and ornithine. The highly significant decreased concentrations of glutamine (p less than 0,01) indicate a catabolic situation of these patients. A quantification of the severity of the catabolic state out of amino acid concentrations is not possible.

Alanine